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11.
使用面包板模型和仿真方法,在实验室内研究月球指向就位测量望远镜(ILOM)的基本特征,如望远镜星像中心点位置精度、温度效应、倾斜以及地面震动的影响。使用这个技术预期在月球表面观测月球自转时可以达到1ms的精度。将在地面上开展测试验证观测以全面评价达到优于0.1″观测精度目标所需条件和特征。  相似文献   
12.
A fully flexure micro/nano transmission platform(MNTP)which has five degrees of freedom is designed on the basis of bridge type amplification mechanism.According to the kinematic theory and the elastic beam theory,the theoretical output displacement equation of the platform is derived,and then piezoelectric actuator(PZT)is calibrated.Meanwhile,a full closed-loop control strategy of the platform is established using the feedforward proportional-integral-derivative(PID)compound control algorithm based on the Preisach model.Moreover,the total transfer function of the micro positioning system is derived,and the calculation method of output signal is acquired.Finally,the theoretical output displacement is verified by finite element analysis(FEA)and positioning experiments.  相似文献   
13.
A cosmic dust detector is currently being developed using a piezoelectric lead zirconate titanate (PZT) element. The characteristics of the multilayered detector (MD), which was composed of one hundred PZT disks, were investigated by bombarding it with hypervelocity iron particles supplied by a Van de Graaff accelerator. It was confirmed that there was a linear relationship between the signal amplitude observed from MD and the momentum of the particles. As compared with the single-layered detector (SD) that was composed of one PZT disk, it was found that the sensitivity of MD was ∼3 times higher than that of SD within the limits of the experimental conditions.  相似文献   
14.
格栅反射器型面的主动控制   总被引:1,自引:1,他引:0  
宋祥帅  王恩美  穆瑞楠  谭述君  兰澜 《航空学报》2018,39(6):221541-221541
为了提高天线反射器的型面精度,以锆钛酸铅压电陶瓷(PZT)驱动的主控格栅反射器为研究对象,对该结构的力学建模方法和形状控制方法进行了研究。首先,建立了格栅反射器、PZT压电作动器一体化有限元模型。然后,采用影响系数矩阵法,以均方根误差最小为目标建立反射器型面主动控制优化模型,并通过最小二乘法求解作动器的最优控制律。最后,搭建了格栅反射器主动控制实验系统,以旋转抛物面为目标型面进行实验研究。实验结果表明,经主动控制后反射器型面精度提高了将近50%,且与仿真结果吻合较好,验证了一体化有限元建模方法的准确性和控制方法的有效性。  相似文献   
15.
提出了一种新型的基于压电陶瓷的非接触式空气作动器,对其静、动态特性进行了分析与实际测 试,并进一步对基于空气作动器的混合隔振系统进行了分析与仿真。  相似文献   
16.
由于悬臂式镗杆的刚度较低,镗削加工中容易产生加工误差。本文采用了误差在线检测与实时补偿的方法,以提高悬臂式镗杆的加工精度。通过应变片测试微量镗削加工中镗杆的变形,在线检测加工误差,用压电陶瓷传感器对加工误差进行实时补偿。镗刀和压电陶瓷传感器分别安装在杠杆式结构的微量镗杆的两端,这样镗杆的结构尺寸可以不受压电陶瓷传感器的影响,镗杆的长径比为8。  相似文献   
17.
结合溶胶-凝胶和水热法的优点,采用改进的溶胶-水热复合法在较低温下制备出纯相PZT纳米粉体,并对粉体的烧结性能进行了研究,分别讨论了烧结温度、保温时间等工艺参数对烧结陶瓷密度、微观结构和压电性能的影响.270℃保温热处理2h可合成出粒径约为20~30nm,具有良好分散性的钙钛矿型PZT纳米粉体,且具有良好的烧结活性.在1150℃烧结保温2h,压电性能达到最优(机电耦合系数: 0.50,机械品质因数: 410,压电常数: 220pC/N,介电常数: 1060).结果表明,溶胶水热复合法具有合成温度低、组分易于控制、粉体烧结活性高的优点.   相似文献   
18.
阐明了PZT压电材料的正、逆压电效应以及相应的压电作动器的机电耦合原理。针对航天自适应桁架结构的特点,运用PZT压电作动器进行了振动抑制实验并取得了良好的效果。  相似文献   
19.
《中国航空学报》2023,36(3):241-253
Structural health monitoring-based quantitative damage diagnosis technique plays a key role in real-time condition monitoring. Among the current research, piezoelectric (PZT) sensor and Guided Wave (GW) based damage quantification methods are promising, which normally establish a calibration model between GW feature and damage degree by experiments on batch specimens, and then conduct the calibration model on the monitored specimen. However, the accuracy of PZT and GW based damage quantification is affected by dispersion introduced by sensor network performance, structural material, and damage propagation among the adopted batch specimens. For improving the accuracy of damage quantification, this paper adopts PZT layer as sensor network and creatively implements theoretical and experimental research on batch PZT layers consistency control. On one hand, a two-level consistency control method based on multidimensional features-Euclidean distance is proposed to ensure the performance consistency of PZT layers placed on different specimens. On the other hand, experimental research on typical aircraft lug structures is also carried out to evaluate the requirement on performance consistency of PZT layers when performing quantitative damage diagnosis, and further verify the proposed two-level consistency control method. Experimental results show that the accuracy of damage quantification raises by 38% when the dispersion of different PZT layers is controlled within 5%.  相似文献   
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